首页> 外文期刊>Acta Pharmaceutica Sinica B >GSH-responsive SN38 dimer-loaded shape-transformable nanoparticles with iRGD for enhancing chemo-photodynamic therapy
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GSH-responsive SN38 dimer-loaded shape-transformable nanoparticles with iRGD for enhancing chemo-photodynamic therapy

机译:GSH响应SN38二聚体加载的形状可变性纳米颗粒,具有IRGD,用于增强化学光动力疗法

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Accurate tumor targeting, deep penetration and superb retention are still the main pursuit of developing excellent nanomedicine. To achieve these requirements, a stepwise stimuli-responsive strategy was developed through co-administration tumor penetration peptide iRGD with shape-transformable and GSH-responsive SN38-dimer (d-SN38)-loaded nanoparticles ( [email?protected] /iRGD). Upon intravenous injection, [email?protected] with high drug loading efficiency (33.92?±?1.33%) could effectively accumulate and penetrate into the deep region of tumor sites with the assistance of iRGD. The gathered nanoparticles simultaneously transformed into nanofibers upon 650?nm laser irradiation at tumor sites so as to promote their retention in the tumor and burst release of reactive oxygen species for photodynamic therapy. The loaded d-SN38 with disulfide bond responded to the high level of GSH in tumor cytoplasm, which consequently resulted in SN38 release and excellent chemo-photodynamic effect on tumor. In?vitro , co-administering iRGD with [email?protected] +laser showed higher cellular uptake, apoptosis ratio and multicellular spheroid penetration. In?vivo , [email?protected] /iRGD+laser displayed advanced penetration and accumulation in tumor, leading to 60.89% of tumor suppression in 4T1 tumor-bearing mouse model with a favorable toxicity profile. Our new strategy combining iRGD with structural transformable nanoparticles greatly improves tumor targeting, penetrating and retention, and empowers anticancer efficacy.
机译:准确的肿瘤靶向,深渗透和精湛的保留仍然是开发优质纳米胺的主要追求。为了达到这些要求,通过共同给予肿瘤渗透肽IRGD,通过具有形状可变性和GSH响应的SN38-二聚体(D-SN38) - 加载的纳米颗粒([电子邮件吗?受保护)/ IRGD)来开发逐步刺激响应策略。在静脉注射时,高药物加载效率的[邮箱吗?受保护的]可以有效地积累并渗透IRGD的肿瘤部位的深层区域。聚集的纳米颗粒在肿瘤部位的650℃激光照射时同时转化为纳米纤维,以促进它们在肿瘤中的保留和反应性释放用于光动力疗法的活性氧。具有二硫键的加载的D-Sn38响应肿瘤细胞质中的高水平GSH,其导致SN38释放和优异的肿瘤的化学光动力学作用。在体外,用[电子邮件吗?保护] +激光共同施用IRGD,显示出更高的细胞吸收,凋亡比和多细胞球体渗透。在?体内,[电子邮件吗?受保护的] / IRGD +激光显示出肿瘤的先进渗透和积累,导致4T1肿瘤小鼠模型中肿瘤抑制的60.89%,具有良好的毒性曲线。我们的新策略与结构可转化的纳米粒子相结合的IRGD大大改善了肿瘤靶向,渗透和保留,并且赋予抗癌功效。

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